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Molt-inhibiting hormone (MIH) gene from the green mud crab Scylla paramamosain and its expression during the molting and ovarian cycle

机译:绿泥蟹Sylla paramamosain的蜕皮抑制激素(MIH)基因及其在蜕皮和卵巢周期中的表达

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摘要

Mud crab is a group of commercially important species that are found throughout the Indo-Pacific region. In this study, the full-length cDNA of molt-inhibiting hormone (Scp-MIH) was cloned from the green mud crab, Scylla paramamosain. The conceptually translated peptide precursor consists of a 78-residue mature peptide, preceded by a 35-residue signal peptide. The mature peptide shares a high identity with the other known MIHs, and contains six conserved cysteine residues that have been proposed to be functionally critical for MIH activity. Analysis of genomic sequence revealed that Scp-MIH gene was organized in a 3 exons/2 introns manner. Quantitative real-time PCR showed that Scp-MIH transcripts were detected mainly in the eyestalk ganglion and brain. During the molting cycle, Scp-MIH mRNA increased significantly from postmolt stage to intermolt stage, then decreased sharply at premolt stage. It implies that MIH is closely related to ecdysteroid production in S. paramamosain. In the ovarian cycle, Scp-MIH transcripts in some neural tissues (eyestalk ganglion and brain) increased from stage I to stage II, and reached the peak value at stage III, then declined at later stage. It suggests that MIH might be involved in the ovarian maturation in S. paramamosain.
机译:泥蟹是在整个印度洋-太平洋地区发现的一组具有商业意义的物种。在这项研究中,从绿泥蟹Scylla paramamosain克隆了蜕皮抑制激素(Scp-MIH)的全长cDNA。概念上翻译的肽前体由78个残基的成熟肽组成,之后是35个残基的信号肽。成熟的肽与其他已知的MIH具有高度同一性,并且包含六个保守的半胱氨酸残基,这些残基已被提出对MIH活性具有功能上的关键意义。基因组序列分析表明,Scp-MIH基因以3个外显子/ 2个内含子的方式组织。实时定量PCR显示,主要在眼柄神经节和大脑中检测到Scp-MIH转录物。在蜕皮过程中,Scp-MIH mRNA从蜕皮后到蜕皮间期显着增加,然后在蜕皮前急剧下降。这表明MIH与副嗜杀链球菌中蜕皮激素的产生密切相关。在卵巢周期中,某些神经组织(眼柄神经节和大脑)中的Scp-MIH转录本从I期到II期增加,在III期达到峰值,然后在后期下降。这表明MIH可能参与了副粘生沙门氏菌的卵巢成熟。

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